Display panel model obtaining method and device, computer equipment and storage medium

By automating the process of obtaining display panel models through data-driven adjustments of initial models, the method addresses inefficiencies in manual data entry and graphic design, achieving faster and more precise model generation.

CN120316992APending Publication Date: 2025-07-15HEFEI BOE OPTOELECTRONIC TECH CO LTD +2
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Patent Information

Application Number
CN202510409928.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2025-07-15

AI Technical Summary

Technical Problem

In the prior art, the manual input of panel data and calculation formulas is slow during the acquisition process of display panel models, resulting in low efficiency and long manual drawing time.

Method used

By obtaining the panel data of the display panel, including model, quantity and structural parameters, the computer equipment is used to adjust the materials and structure in the initial display panel model, and the model of the display panel is automatically obtained.

Benefits of technology

It improves the acquisition efficiency of display panel models, reduces manual drawing time, shortens from 14 days to 4 days, and improves the accuracy and standardization of the acquisition model.

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Abstract

The invention provides a display panel model obtaining method and device, computer equipment and a storage medium, and belongs to the field of panel manufacturing. According to the acquisition method of the display panel model, the panel data of the display panel and the initial display panel model are acquired, the existing initial display panel model is adjusted based on the panel data to acquire the model of the display panel, and compared with acquisition of the display panel model through manual drawing, the efficiency of acquiring the display panel model is improved.
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Description

Technical Field

[0001] This application relates to the technical field of panel manufacturing, and particularly relates to a method, apparatus, computer device, and storage medium for obtaining a display panel model. Background Art

[0002] The optical design of a display panel refers to formulating panel data of a display panel that meets customer requirements according to the customer's requirements for performance parameters such as the brightness, power consumption, thickness, size, and weight of the display panel. The panel data includes the model of parts in the display panel, the current of LEDs (Light Emitting Diodes) in the display panel, and the number of LED beads, etc. Then, based on the panel data of the display panel, drawing is performed to obtain a model of the display panel that meets customer requirements.

[0003] Currently, a method for obtaining a display panel model is to manually input the panel data of the display panel and the calculation formula for calculating performance parameters based on the panel data of the display panel, so that the computer device calculates the performance parameters of the corresponding display panel according to the manually input panel data and the calculation formula. If the performance parameters do not meet the customer requirements, new panel data is manually input until panel data that meets the customer specification requirements is obtained. Then, based on this panel data, drawing is performed manually to obtain the model of the display panel.

[0004] Since the above calculation formula and the panel data such as the model of the above parts are complex in structure, the speed of manually inputting the panel data and the calculation formula in the above process is slow, and the time consumed by manual drawing is long, resulting in low efficiency in obtaining the display panel model. Summary of the Invention

[0005] Embodiments of this application provide a method, apparatus, computer device, and storage medium for obtaining a display panel model, which are used to improve the efficiency of obtaining the display panel model. The technical solution is as follows:

[0006] In a first aspect, a method for obtaining a display panel model is provided. The method includes:

[0007] Obtain the panel data of the display panel. The panel data includes multiple parameters, and the multiple parameters include model parameters, quantity parameters, and structure parameters. The model parameters indicate the model of the material used to produce the display panel, the quantity parameters indicate the quantity of the material used to produce the display panel, and the structure parameters indicate the structure of the display panel;

[0008] Obtain an initial display panel model. The initial display panel model includes the material used to produce the initial display panel and the structure of the initial display panel;

[0009] Based on the panel data of the display panel, adjust the materials and the structure of the initial display panel model in the initial display panel model to obtain the model of the display panel.

[0010] The method for obtaining the display panel model provided by the embodiments of the present application obtains the panel data and the initial display panel model of the display panel, and adjusts the existing initial display panel model based on the panel data to obtain the model of the display panel. Compared with obtaining the display panel model by manual drawing, the efficiency of obtaining the display panel model is improved.

[0011] In some embodiments, the above-mentioned obtaining the panel data of the display panel includes:

[0012] A display panel data acquisition interface, on which a plurality of parameter selection controls are displayed, and each parameter selection control corresponds to a parameter in the panel data, and is used to obtain the parameter value of the corresponding parameter in the panel data;

[0013] In response to the selection operation on the plurality of parameter selection controls, obtain the panel data of the display panel.

[0014] In some embodiments, the above-mentioned obtaining the panel data of the display panel in response to the selection operation on the plurality of parameter selection controls includes:

[0015] In response to the selection operation on the plurality of parameter selection controls, obtain candidate panel data;

[0016] Based on a plurality of parameters in the candidate panel data, obtain the performance parameters of the display panel indicated by the candidate panel data;

[0017] In response to the performance parameters of the display panel indicated by the candidate panel data meeting the preset conditions, determine the candidate panel data as the panel data of the display panel.

[0018] In some embodiments, the above-mentioned obtaining the candidate panel data in response to the selection operation on the plurality of parameter selection controls includes:

[0019] In response to the selection operation on the plurality of parameter selection controls, obtain the first part of the parameters in the candidate panel data;

[0020] Based on the first part of the parameters in the candidate panel data and the preset conditions, obtain the second part of the parameters in the candidate panel data, and the parameters in the second part of the parameters do not belong to the first part of the parameters.

[0021] In some embodiments, the above-mentioned method further includes:

[0022] In response to the performance parameters of the display panel indicated by the candidate panel data not meeting the preset conditions, display, on the display panel data acquisition interface, the parameters in the candidate panel data that cause the performance parameters of the display panel corresponding to the candidate panel data not to meet the preset conditions.

[0023] In some embodiments, the above-mentioned obtaining the initial display panel model includes:

[0024] Based on the panel data of the display panel, obtain a target initial display panel model from multiple initial display panel models. The target initial display panel model is the initial display panel model with the highest similarity between the panel data and the panel data of the display panel among the multiple initial display panel models.

[0025] In some embodiments, the above-mentioned adjusting the materials and the structure of the initial display panel model based on the panel data of the display panel includes at least one of the following:

[0026] Based on the model parameters in the panel data of the display panel, replace the materials in the initial display panel model with the materials corresponding to the model parameters;

[0027] Based on the quantity parameters in the panel data of the display panel, adjust the quantity of the corresponding materials in the initial display panel model to the quantity indicated by the quantity parameters;

[0028] Based on the structure parameters in the panel data of the display panel, adjust the structure of the initial display panel model to the structure indicated by the structure parameters.

[0029] In some embodiments, the above-mentioned method further includes:

[0030] In response to a change in the parameters in the panel data of the display panel, adjust the model of the display panel based on the changed parameters.

[0031] In a second aspect, there is provided an apparatus for obtaining a display panel model, the apparatus including:

[0032] A data acquisition module, configured to acquire the panel data of the display panel. The panel data includes multiple parameters, and the multiple parameters include model parameters, quantity parameters, and structure parameters. The model parameters indicate the model of the material used to produce the display panel, the quantity parameters indicate the quantity of the material used to produce the display panel, and the structure parameters indicate the structure of the display panel;

[0033] An initial model acquisition module, configured to acquire an initial display panel model. The initial display panel model includes the materials used to produce the initial display panel and the structure of the initial display panel;

[0034] An adjustment module, configured to adjust materials and the structure in an initial display panel model based on panel data of a display panel, so as to obtain a model of the display panel.

[0035] In some embodiments, the above data acquisition module includes:

[0036] An interface display unit, configured to display a panel data acquisition interface, on which a plurality of parameter selection controls are displayed, and each parameter selection control corresponds to a parameter in the panel data, and is used to obtain a parameter value of the corresponding parameter in the panel data;

[0037] A data acquisition unit, configured to obtain panel data of the display panel in response to a selection operation on the plurality of parameter selection controls.

[0038] In some embodiments, the above data acquisition unit includes:

[0039] An acquisition subunit, configured to obtain candidate panel data in response to a selection operation on the plurality of parameter selection controls;

[0040] A performance parameter acquisition subunit, configured to obtain performance parameters of the display panel indicated by the candidate panel data based on a plurality of parameters in the candidate panel data;

[0041] A determination subunit, configured to determine the candidate panel data as the panel data of the display panel in response to the performance parameters of the display panel indicated by the candidate panel data meeting a preset condition.

[0042] In some embodiments, the above acquisition subunit is configured to:

[0043] Obtain a first part of parameters in the candidate panel data in response to a selection operation on the plurality of parameter selection controls;

[0044] Based on the first part of parameters in the candidate panel data and a preset condition, obtain a second part of parameters in the candidate panel data, and the parameters in the second part of parameters do not belong to the first part of parameters.

[0045] In some embodiments, the above device further includes:

[0046] A highlighting module, configured to display, on the display panel data acquisition interface, parameters in the candidate panel data that cause the performance parameters of the display panel corresponding to the candidate panel data not to meet the preset condition in response to the performance parameters of the display panel indicated by the candidate panel data not meeting the preset condition.

[0047] In some embodiments, the above initial model acquisition module is configured to:

[0048] Based on the panel data of the display panel, obtain a target initial display panel model from multiple initial display panel models, where the target initial display panel model is the initial display panel model with the highest similarity between the panel data and the panel data of the display panel among the multiple initial display panel models.

[0049] In some embodiments, the above adjustment module is configured to:

[0050] Based on the model parameters in the panel data of the display panel, replace the materials in the initial display panel model with the materials corresponding to the model parameters;

[0051] Based on the quantity parameters in the panel data of the display panel, adjust the quantity of the corresponding materials in the initial display panel model to the quantity indicated by the quantity parameters;

[0052] Based on the structure parameters in the panel data of the display panel, adjust the structure of the initial display panel model to the structure indicated by the structure parameters.

[0053] In some embodiments, the above device further includes:

[0054] A model adjustment module, configured to, in response to a change in the parameters in the panel data of the display panel, adjust the model of the display panel based on the changed parameters.

[0055] In a third aspect, a computer device is provided, where the computer device includes a processor and a memory, and the memory is used to store at least one segment of computer program, and the at least one segment of computer program is loaded and executed by the processor to implement the operations performed by the method for obtaining a display panel model provided in the above first aspect or various optional implementation manners of the first aspect.

[0056] In a fourth aspect, a computer-readable storage medium is provided, where at least one segment of computer program is stored in the computer-readable storage medium, and the at least one segment of computer program is loaded and executed by a processor to implement the operations performed by the method for obtaining a display panel model provided in the above first aspect or various optional implementation manners of the first aspect.

[0057] In a fifth aspect, a computer program product is provided, including a computer program, and the computer program is executed by a processor to implement the operations performed by the method for obtaining a display panel model provided in the above first aspect or various optional implementation manners of the first aspect.

[0058] Based on the implementation manners provided in the above aspects, the present application can be further combined to provide more implementation manners. Description of the Drawings

[0059] To more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the accompanying drawings required for the description of the embodiments. Obviously, the accompanying drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other accompanying drawings can be obtained based on these drawings.

[0060] Figure 1 It is a schematic diagram of the implementation environment of a method for obtaining a display panel model provided by an embodiment of the present application;

[0061] Figure 2 It is a flowchart of a method for obtaining a display panel model provided by an embodiment of the present application;

[0062] Figure 3 It is a flowchart of another method for obtaining a display panel model provided by an embodiment of the present application;

[0063] Figure 4 It is an example diagram of a panel data acquisition interface provided by an embodiment of the present application;

[0064] Figure 5 It is a flowchart of another method for obtaining a display panel model provided by an embodiment of the present application;

[0065] Figure 6 It is an example diagram of a condition setting interface provided by an embodiment of the present application;

[0066] Figure 7 It is an example diagram of a reference interface provided by an embodiment of the present application;

[0067] Figure 8 It is a flowchart of a method for obtaining a DR report provided by an embodiment of the present application;

[0068] Figure 9 It is a flowchart of a data import provided by an embodiment of the present application;

[0069] Figure 10 It is an example diagram of a data import interface provided by an embodiment of the present application;

[0070] Figure 11 It is an example diagram of a model selection interface provided by an embodiment of the present application;

[0071] Figure 12 It is a flowchart of another method for obtaining a display panel model provided by an embodiment of the present application;

[0072] Figure 13 It is a structural block diagram of a device for obtaining a display panel model provided by an embodiment of the present application;

[0073] Figure 14It is a schematic structural diagram of a computer device provided by an embodiment of the present application. Detailed implementation manners

[0074] To make the objectives, technical solutions, and advantages of the present application clearer, the following will further describe the embodiments of the present application in detail with reference to the accompanying drawings.

[0075] In the present application, terms such as "first" and "second" are used to distinguish identical items or similar items with basically the same functions. It should be understood that there is no logical or temporal dependence between "first", "second", and "nth", nor are the quantity and execution order limited.

[0076] In the present application, the term "at least one" means one or more, and the meaning of "multiple" means two or more.

[0077] It should be noted that the information (including but not limited to user device information, user personal information, etc.), data (including but not limited to data for analysis, stored data, displayed data, etc.), and signals involved in the present application are all authorized by users or fully authorized by all parties, and the collection, use, and processing of relevant data need to comply with relevant laws, regulations, and standards of relevant countries and regions. For example, the panel data involved in the present application is obtained under full authorization.

[0078] The method for obtaining a display panel model provided by an embodiment of the present application can be executed by a computer device. In some embodiments, the computer device is a terminal or a server. First, taking the computer device as a server as an example, the implementation environment of the method for obtaining a display panel model provided by an embodiment of the present application will be introduced.

[0079] Figure 1 It is a schematic diagram of the implementation environment of a method for obtaining a display panel model provided by an embodiment of the present application. Refer to Figure 1 , the implementation environment includes a terminal 101 and a server 102. The terminal 101 and the server 102 can be directly or indirectly connected through a wired network or a wireless network, and the present application does not make any limitations here.

[0080] In some embodiments, the terminal 101 is a smart phone, a tablet computer, a notebook computer, a desktop computer, a smart speaker, a smart watch, a smart voice interaction device, a smart home appliance, a vehicle-mounted terminal, etc., but is not limited thereto. The terminal 101 installs and runs an application program that supports obtaining a display panel model. Exemplarily, the terminal 101 is a terminal used by a user. The terminal 101 sends a request for obtaining a display panel model to the server 102 through the above application program. The request for obtaining a display panel model carries panel parameters of the display panel, indicating to obtain the display panel model indicated by the panel parameters.

[0081] In some embodiments, the server 102 is an independent physical server, and can also be a server cluster or a distributed system composed of multiple physical servers. It can also be a cloud server that provides basic cloud computing services such as cloud services, cloud databases, cloud computing, cloud functions, cloud storage, network services, cloud communications, middleware services, domain name services, security services, Content Delivery Network (CDN), big data, and artificial intelligence platforms. The server 102 is used to provide backend services for applications that support obtaining display panel models. Exemplarily, the server 102 receives a request for obtaining a display panel model sent by the terminal 101, obtains the display panel model indicated by the panel data according to the panel data carried in the request for obtaining the display panel model, and returns the display panel model to the terminal 101.

[0082] In some embodiments, the server 102 undertakes the main computing work, and the terminal 101 undertakes the secondary computing work; or, the server 102 undertakes the secondary computing work, and the terminal 101 undertakes the main computing work; or, the server 102 and the terminal 101 adopt a distributed computing architecture for collaborative computing.

[0083] Secondly, taking the computer device as the terminal as an example, the implementation environment of the method for obtaining a display panel model provided by the embodiments of the present application is introduced. The terminal can be implemented in various possible implementation manners of the above terminal 101. An application that supports obtaining a display panel model is installed and run on the terminal. The terminal, through the above application, obtains the display panel model indicated by the panel data according to the panel data of the display panel.

[0084] Those skilled in the art can know that the number of the above terminals and servers can be more or less. For example, the above terminal can be only one, or the above terminal can be dozens or hundreds, or a larger number. The present application does not limit the number and device types of the terminals and the number and device types of the servers.

[0085] In some embodiments, the above-mentioned wireless network or wired network uses standard communication technologies and / or protocols. The network is usually the Internet, but can also be any network, including but not limited to any combination of LAN (Local Area Network), MAN (Metropolitan Area Network), WAN (Wide Area Network), mobile, wired or wireless network, private network or virtual private network. In some embodiments, technologies and / or formats including HTML (Hyper Text Mark-up Language), XML (Extensible Markup Language), etc. are used to represent the data exchanged through the network. In addition, conventional encryption technologies such as SSL (Secure Socket Layer), TLS (Transport Layer Security), VPN (Virtual Private Network), IPsec (Internet Protocol Security), etc. can also be used to encrypt all or some of the links. In other embodiments, customized and / or dedicated data communication technologies can also be used to replace or supplement the above data communication technologies.

[0086] The method for obtaining the display panel model provided by the embodiments of the present application will be described below. This method can be applied to the Figure 1 embodiment environment shown above. Figure 2 It is a flowchart of a method for obtaining a display panel model provided by the embodiments of the present application. As Figure 2 shown, this method includes the following steps.

[0087] 201. The computer device obtains the panel data of the display panel. The panel data includes multiple parameters, and the multiple parameters include a model parameter, a quantity parameter, and a structure parameter. The model parameter indicates the model of the material used to produce the display panel, the quantity parameter indicates the quantity of the material used to produce the display panel, and the structure parameter indicates the structure of the display panel.

[0088] Among them, the display panel can be an NB (NoteBook) display panel, an MBL (Mobile Billboard), a TPC (Touch Panel Computer), an in-vehicle display screen, an MNT (Monitor), etc. The panel data of the display panel is data related to the production of the display panel. In the panel data, the model parameters include the Tr (Rise Time) of the display panel, the LED Model of the display panel, the Location of the display panel, the Luminous flux, the Forward Current of the light-emitting elements (such as LED lights) on the display panel, the Forward Voltage (Vf), the BLUE Brightness, the LCM Brightness, the Blue Power, and the model of the LGP (Light Guide Plate), etc. The quantity parameters include the number of light-emitting elements (LED Number) on the display panel, the usage amount of A-A H (a-Si:H, hydrogenated amorphous silicon), the usage amount of A-A V, the A-A (Array Substrate), and the maximum number of LEDs (max LED number), etc. The structure parameters include the Film Structure of the display panel, the length and width of the display panel, the circuit structure inside the display panel, and the thickness of each layer of the display panel. Among them, the thickness of each layer of the display panel includes the thickness of the Cell Tape, the thickness of the backplane, the thickness of the rubber frame, and the thickness of the panel, etc. The embodiments of the present application do not limit the panel data.

[0089] In the embodiments of the present application, the computer device obtains the panel data of the display panel stored locally, or receives the panel data of the display panel sent by other computer devices. The embodiments of the present application do not limit this.

[0090] 202. The computer device obtains an initial display panel model, and the initial display panel model includes the materials used to produce the initial display panel and the structure of the initial display panel.

[0091] Among them, the models and quantities of various materials used to produce the initial display panel in the initial display panel model and the structure of the initial display panel are preset. The initial display panel is any display panel, such as a basic display panel with basic display functions, or a display panel designed in advance to meet specified performance requirements, etc. The embodiments of the present application do not limit this.

[0092] In the embodiments of the present application, the computer device obtains the initial display panel model stored locally, or receives the initial display panel model sent by other computer devices. The embodiments of the present application do not limit this.

[0093] 203. The computer device adjusts the materials in the initial display panel model and the structure of the initial display panel model based on the panel data of the display panel to obtain the model of the display panel.

[0094] Among them, the model of the display panel is a 3D (Three Dimensions) stereoscopic electronic model or a 2D (Two Dimensions) planar electronic model corresponding to the display panel. The model of the display panel includes the materials used to produce the display panel and the structure of the display panel. In this model, the materials used to produce the display panel are spliced and combined according to the structure of the display panel. The model of the display panel can be implemented as a 3D electronic drawing or a 2D electronic drawing. The embodiments of the present application do not limit this. When the model of the display panel is a 3D stereoscopic electronic model, the model of the display panel can be implemented as a 3D electronic drawing. When the model of the display panel is a 2D planar electronic model, the model of the display panel can be implemented as a 2D electronic drawing.

[0095] In the embodiments of the present application, the computer device adjusts the initial display panel model based on the panel data of the display panel, and adjusts the model number and quantity of the materials in the initial display panel model and the structure of the initial display panel model to be consistent with the panel data to obtain the model of the display panel.

[0096] The method for obtaining the display panel model provided by the embodiments of the present application obtains the panel data and the initial display panel model of the display panel, and adjusts the existing initial display panel model based on the panel data to obtain the model of the display panel. Compared with obtaining the display panel model by manual drawing, the efficiency of obtaining the display panel model is improved.

[0097] The above Figure 2 illustrates the main process of the method for obtaining the display panel model provided by the embodiments of the present application. The following Figure 3 takes the execution of this method by a computer device as an example to exemplarily illustrate the detailed process of this method. Figure 3 is a flowchart of a method for obtaining a display panel model provided by the embodiments of the present application. As Figure 3 shown, the method includes the following steps.

[0098] 301. The computer device displays a panel data acquisition interface, and a plurality of parameter selection controls are displayed on the panel data acquisition interface. Each parameter selection control corresponds to a parameter in the panel data and is used to obtain the parameter value of the corresponding parameter in the panel data.

[0099] Among them, multiple parameter selection controls on the panel data acquisition interface are pre-set according to the parameters included in the panel data. Each parameter selection control corresponds to a parameter in the panel data, and the parameter selection control stores at least one optional parameter value corresponding to the parameter, which is used to determine the parameter value of the parameter corresponding to the parameter selection control from the at least one optional parameter value. The following Figure 4 is an example diagram of a panel data acquisition interface provided by an embodiment of the present application. As Figure 4 shown, a plurality of parameter selection controls 401 are displayed on the panel data acquisition interface 400.

[0100] In the embodiment of the present application, the computer device displays the panel data acquisition interface in response to a trigger operation on an application that supports obtaining a display panel model, or a trigger operation on a data acquisition control in the application. The computer device can display the panel data acquisition interface in the form of a pop-up window, or can also display the panel data acquisition interface on a new page. The embodiment of the present application does not limit this.

[0101] 302. The computer device obtains candidate panel data in response to a selection operation on a plurality of parameter selection controls.

[0102] Among them, the candidate panel data includes multiple parameters, and the multiple parameters include a model parameter, a quantity parameter, and a structure parameter. The model parameter indicates the model of the material used to produce the display panel corresponding to the candidate panel data, the quantity parameter indicates the quantity of the material used to produce the display panel corresponding to the candidate panel data, and the structure parameter indicates the structure of the display panel corresponding to the candidate panel data.

[0103] In the embodiment of the present application, for any parameter selection control on the panel data acquisition interface, the computer device displays a drop-down box corresponding to the parameter selection control in response to a trigger operation on the parameter selection control. A plurality of optional parameter values corresponding to the parameter of the parameter selection control are displayed on the drop-down box. The computer device determines the parameter value of the parameter as the triggered optional parameter value in response to a trigger operation on any optional parameter value. For example, as Figure 4As shown, the parameter corresponding to the parameter selection control 401 is the LGP model. In response to the triggering operation on the parameter selection control 401, the computer device displays a drop-down box 402, and multiple selectable models 403 are displayed on the drop-down box 402, such as 0.5T PMMA, etc. In response to the triggering operation on 0.5T PMMA, the computer device determines the LGP model as 0.5T PMMA. The computer device obtains the candidate panel data by determining the parameter values of each parameter in the candidate panel data. In this process, in response to the selection operation on the parameter selection box, the computer device can obtain the candidate panel data, and the user only needs to quickly select parameter values such as the material model through the drop-down box corresponding to the parameter selection control to input the candidate panel data into the computer device. Compared with the method of manually inputting parameter values such as the material model, the efficiency of the computer device in obtaining the candidate panel data is improved, and the situation of manual input errors can also be avoided, improving the accuracy of the candidate panel data.

[0104] 303. The computer device obtains the performance parameters of the display panel indicated by the candidate panel data based on multiple parameters in the candidate panel data.

[0105] Among them, the performance parameters of the display panel include at least one of the following: the brightness, power consumption, thickness, size, weight, etc. of the display panel.

[0106] In an embodiment of the present application, a computer device obtains performance parameters of a display panel indicated by candidate panel data based on a preset relative calculation logic and multiple parameters in the candidate panel data. Among them, the relative calculation logic indicates, for each parameter in the panel data, the change amount of the performance parameter when the parameter is modified. In the process of obtaining the performance parameters of the display panel indicated by the candidate panel data, for each performance parameter, the computer device obtains at least one reference panel (reference model) corresponding to the performance parameter, and the performance parameters of the reference panel meet the following preset conditions, or the similarity with the boundary value of the preset range in the following preset conditions is greater than a first threshold. For each reference panel, for each parameter in the candidate panel data, the computer device obtains the gain value of the parameter for the above performance parameter based on the parameter, the corresponding parameter in the panel data corresponding to the reference panel, and the relative calculation logic, and the gain value indicates the change amount of the above performance parameter when the corresponding parameter in the data corresponding to the reference panel is modified to the above parameter in the candidate panel data. The computer device obtains the above performance parameters of the display panel indicated by the candidate panel data based on the gain values of multiple parameters in the candidate panel data for the above performance parameter. When the computer device obtains multiple reference panels corresponding to the performance parameter, the computer device obtains the above performance parameters of the display panel indicated by the candidate panel data with each reference panel as a reference, and takes the average value of the performance parameters obtained under different references to obtain the above performance parameters of the display panel indicated by the candidate panel data. The above process is a process of reviewing customer specifications according to the customer RFQ (Request For Quotation). Through presetting the relative calculation logic, the computer device can directly obtain the performance parameters of the display panel indicated by the candidate panel data according to the calculation logic and the panel data of the reference panel, realizing the automatic matching of the customer RFQ and the design selection. Compared with manually inputting the relative calculation logic during each acquisition of performance parameters, the efficiency of obtaining performance parameters is improved, and some other influencing factors can also be avoided, improving the accuracy of obtaining performance parameters.

[0107] In addition, the panel data of the reference panel is preset. On the panel data acquisition interface, the computer device can display a drop-down box in response to a selection operation on a switching control, and display at least one selectable reference panel in the drop-down box. The computer device obtains the panel data of the reference panel in response to a triggering operation on any one of the reference panels. The user can quickly switch the reference panel by pulling down, improving the efficiency of obtaining performance parameters. For example, Figure 4As shown, the computer device displays a switching control 404 on the panel data acquisition interface 400. In response to a triggering operation on the switching control 404, a drop-down box 405 is displayed, and multiple reference panels 406 are displayed on the drop-down box 405. Table 1 below is an example of the panel data of a reference panel and the candidate display panel data provided by an embodiment of the present application. Table 1 only shows some parameters. As shown in Table 1, the panel data of the reference panel and the candidate display panel data (the panel data of the candidate panel) both include parameters such as LED, Flim, LGP, and AA. Based on these parameters, the computer device obtains the gain in performance parameters of the display panel corresponding to the candidate panel data by comparing the panel data of the reference panel and the candidate display panel data, and further obtains the performance parameters of the display panel corresponding to the candidate panel data. In addition, in Table 1, the mark (Remark) is used to record information such as remarks on the candidate panel data to record the detailed information of the display panel corresponding to the candidate panel data.

[0108] Table 1

[0109] Parameter Reference Panel Candidate Panel Remark Tr … … … LED Model … … … Location … … … LED Number … … … … … … …

[0110] In some embodiments, the computer device, in response to a selection operation on multiple parameter selection controls, obtains a first part of the parameters in the candidate panel data, and then based on the first part of the parameters in the candidate panel data and a preset condition, obtains a second part of the parameters in the candidate panel data, and the parameters in the second part do not belong to the first part of the parameters. That is, the computer device, in response to a selection operation on multiple parameter selection controls, obtains some parameters in the candidate panel data, and then based on the some parameters in the candidate panel data and a preset condition, obtains another part of the parameters in the candidate panel data. For example, the computer device can obtain the I (current) of the LED based on the already obtained parameters P (Power, power), V (Voltage, voltage), and IC (conversion efficiency) through the following formula (1). According to the requirements of the preset condition for the power consumption specification and the known parameters, the computer device accurately infers the unknown current in reverse. Compared with manually selecting the current between 6 and 25 milliamperes (mA) based on experience and entering it, the accuracy of obtaining parameters is improved, and the user does not need to try repeatedly, improving the efficiency of obtaining candidate panel data. In this process, the computer device, by combining the known parameters in the candidate panel data with the preset condition, derives the unknown parameters in the candidate panel data. Compared with manually setting the above unknown parameters according to experience and then adjusting the above unknown parameters according to whether the display panel indicated by the candidate panel data meets the preset condition, the computer device can directly obtain the unknown parameters that make the display panel indicated by the candidate panel data meet the preset condition, improving the efficiency of obtaining candidate panel data.

[0111] I = (P / V) * IC (1)

[0112] In some embodiments, as shown in Table 1 above, the computer device displays the gain values of the performance parameters of the display panel indicated by the candidate panel data on the panel data acquisition interface, such as Size Gain, Current Enhancement, LED Number Enhancement, LED illumination Enhancement, Film Enhancement, LGP Gain, and Total Enhancement.

[0113] 304. In response to the performance parameters of the display panel indicated by the candidate panel data meeting the preset conditions, the computer device determines the candidate panel data as the panel data of the display panel.

[0114] Among them, the preset conditions, also known as the customer RFQ specifications, indicate the preset ranges of the performance parameters of the display panel. The performance parameters of the display panel meeting the preset conditions mean that for each performance parameter of the display panel, the performance parameter is within the corresponding preset range in the preset conditions. Taking the preset ranges of the brightness and power consumption of the display panel indicated by the preset conditions as an example, if the preset conditions indicate that the preset range of the brightness of the display panel is 200 - 400 nits and the preset range of the power consumption of the display panel is less than 30 watts, then the performance parameters of the display panel meeting the preset conditions mean that the brightness of the display panel is between 200 - 400 nits and the power consumption of the display panel is less than 30 watts. The panel data includes multiple parameters, and the multiple parameters include model parameters, quantity parameters, and structural parameters. The model parameters indicate the models of the materials used to produce the display panel, the quantity parameters indicate the quantities of the materials used to produce the display panel, and the structural parameters indicate the structure of the display panel.

[0115] In the embodiments of the present application, for each preset range indicated by the preset conditions, the computer device compares the preset range with the corresponding performance parameters of the display panel indicated by the candidate panel data. If all the performance parameters of the display panel are within the corresponding preset ranges indicated by the preset conditions, then the performance parameters of the display panel indicated by the candidate panel data meet the preset conditions, and the computer device determines the candidate panel data as the panel data of the display panel.

[0116] In some embodiments, in response to the existence of a performance parameter in the performance parameters of the display panel indicated by the candidate panel data that does not conform to the preset condition, the computer device highlights the performance parameter. For example, the computer device displays the performance parameter and other performance parameters of the display panel on the panel data acquisition interface, and the background color or the color of the performance parameter is different from other performance parameters of the display panel. By highlighting the performance parameter that does not conform to the preset condition, it is possible to provide a reference for the user during the process of the user adjusting the candidate panel data, so that the user can make corresponding adjustments to the candidate panel data according to the performance parameter, thereby improving the efficiency of obtaining new candidate panel data.

[0117] The above process is described by taking the example that the computer device completes the evaluation of the display panel indicated by the candidate panel data at one time according to the preset conditions. In some embodiments, the computer device completes the evaluation of the display panel indicated by the candidate panel data in multiple times. That is, the computer device first obtains some parameters in the candidate panel data, and according to these parameters, obtains some performance parameters of the display panel indicated by the candidate panel data. When these performance parameters conform to the corresponding preset ranges in the preset conditions, the computer device obtains another part of the parameters in the candidate panel data, and according to these other parameters, obtains another part of the performance parameters of the display panel indicated by the candidate panel data. If these other performance parameters also conform to the corresponding preset ranges in the preset conditions, the computer device determines the candidate panel data as the panel data of the display panel. For example, the preset conditions include the preset ranges of the brightness, power consumption, thickness, size and weight of the display panel. The computer device first obtains the candidate panel data whose brightness, power consumption, thickness and size conform to the preset conditions, and then judges whether the weight of the display panel indicated by the candidate panel data conforms to the preset conditions, so as to realize the automatic evaluation of the LCD weight. In this process, after the computer device obtains the candidate panel data whose brightness, power consumption, thickness and size conform to the preset conditions, according to the border requirements of the display panel, it performs automatic border decomposition, that is, the computer device obtains the parameters of the upper border, lower border, left border, right border and middle area (AA area) of the display panel in the candidate panel data, obtains the thickness of the Cell tape in the candidate panel data, the thickness from the Cell tape to the backplane, the thickness from the backplane to the plastic frame, and the thickness from the plastic frame to the panel, and obtains the models of the materials such as the glass, backplane, Cell tape and plastic frame of the display panel in the candidate panel data. The computer device obtains the density and volume of each part of the display panel indicated by the candidate panel data according to the above data, and obtains the weight of each part of the display panel indicated by the candidate panel data according to the density and volume of each part. On the premise that the parameters such as the external dimensions of the display panel are already clear, the above process enables the computer device to automatically capture the above density and volume according to the parameters of the upper border, lower border, left border, right border and middle area (AA area) of the display panel entered by the user, the thickness of the Cell tape in the candidate panel data, the thickness from the Cell tape to the backplane, the thickness from the backplane to the plastic frame, and the thickness from the plastic frame to the panel, and the models of the materials such as the glass, backplane, Cell tape and plastic frame of the display panel selected by the user through the drop-down selection box, and then automatically calculate the weights of each part such as the panel, backplane and Cell tape of the display panel. Compared with manually calculating the weights of each part of the display panel, the efficiency and accuracy of obtaining the weight of the display panel are improved. The following Table 2 to Table 3 are examples of the data entered during the border decomposition process.

[0118] Table 2

[0119]

[0120]

[0121] Table 3

[0122]

[0123]

[0124] In some embodiments, when the computer device completes the evaluation of the display panel indicated by the candidate display panel data in multiple times, in response to the fact that some performance parameters of the display panel indicated by the candidate panel data do not conform to the preset conditions, the computer device re-obtains new candidate panel data and no longer evaluates the display panel according to the remaining performance parameters, which can save computing resources.

[0125] The above steps 302 to 304 are a possible implementation manner of obtaining the panel data of the display panel in response to the selection operation on multiple parameter selection controls. This possible implementation manner is described by taking the performance parameters of the display panel indicated by the candidate panel data conforming to the preset performance parameters as an example. In some embodiments, if the performance parameters of the display panel indicated by the panel data do not conform to the preset performance parameters, the computer device repeats the above steps 302 to 304 until the panel data conforming to the preset performance parameters is obtained. Correspondingly, in response to the selection operation on multiple parameter selection controls, the computer device re-obtains new candidate panel data, and then determines whether the performance parameters of the display panel indicated by the new candidate panel data conform to the preset performance parameters through the above steps 303 to 304. If the performance parameters of the display panel indicated by the new candidate panel data conform to the preset performance parameters, the computer device determines the new candidate panel data as the panel data of the display panel. If the performance parameters of the display panel indicated by the new candidate panel data do not conform to the preset performance parameters, the computer device continues to repeat the above steps 302 to 304. After obtaining the panel data conforming to the preset performance parameters, the above process can directly obtain the model of the display panel that meets the preset performance parameters by subsequent steps according to the panel data, without having to adjust the display panel model multiple times after obtaining the display panel model to make the display panel indicated by the display panel model conform to the preset performance parameters, thus improving the efficiency of obtaining the model of the display panel.

[0126] In addition, in some embodiments, in response to the performance parameters of the display panel indicated by the candidate panel data not matching the preset performance parameters, the computer device displays, on the panel data acquisition interface, the parameters (simply referred to as abnormal parameters) in the candidate panel data that cause the performance parameters of the display panel corresponding to the candidate panel data not to match the preset performance parameters. In this way, when the user obtains new candidate panel data, they can directly adjust the candidate panel data based on the abnormal parameters, improving the efficiency of obtaining new candidate panel data. For example, the computer device pre-sets the maximum number of LED beads and the minimum number of LED beads of the display panel. If the number of LED beads in the candidate panel data is between the maximum number of LED beads and the minimum number of LED beads, the computer device normally displays the background color of the number of LED beads on the panel data acquisition interface. If the number of LED beads in the candidate panel data is not between the maximum number of LED beads and the minimum number of LED beads, the computer device turns the background color of the number of LED beads red on the panel data acquisition interface to improve the accuracy of the candidate panel data. Among them, the maximum number of LED beads is calculated by the computer device based on the LED type and the minimum pitch determined by the process during SMT (Surface Mounted Technology) component placement, and the minimum number of LED beads is calculated by the computer device according to the A / P requirements. The above process can be implemented using the conditional formatting function port of the application program. The computer device controls the candidate panel data, that is, the design result, by adding preset conditions to the port to ensure the accuracy of the panel design. During the process of setting parameters such as the maximum number of LED beads and the minimum number of LED beads, as Figure 6 shown, the computer device displays the condition setting interface 600, and displays the input box 601 on the condition setting interface. In response to the input operation on the input box 601, the preset value of the parameter is obtained.

[0127] The above steps 301 to 304 are a possible implementation manner for obtaining the panel data of the display panel. In this possible implementation manner, the computer device obtains the candidate panel data by responding to the user's selection operation of the parameter, and then evaluates the candidate panel data according to the preset conditions, and determines the candidate panel data that passes the evaluation as the panel data of the display panel. The above possible implementation manner can be implemented as an optical automatic design tool system. As Figure 5 shown, the computer device imports the customer RFQ specifications into the RFQ automatic review system in the optical automatic design tool system for subsequent specification matching with the candidate panel data. Then, the user can select parameters such as the material model by pulling down in the optical automatic design tool system, enabling the computer device to obtain the candidate panel data, and then the computer device matches the candidate panel data to determine whether the candidate panel data meets the customer RFQ specifications. During the above process, as Figure 5As shown, the database connected to the computer device includes a material library and a logic library. The material library includes a customer profile database, a mass production design parameter database, and a basic material design parameter database. The RFQ automatic review system obtains the panel data of the reference panel from the customer profile database and obtains the parameters selected by the user from the mass production design parameter database and the basic material design parameter database. The logic library includes a VBA (Visual Basic for Applications, Visual Basic macro language) programming module, an impact factor logic calculation module, and an automatic customer specification detection module. The RFQ automatic review system obtains the relative calculation logic from the impact factor logic calculation module and determines whether the candidate panel data meets the customer specifications according to the automatic customer specification detection module. The computer device sets the calculation logic in the impact factor logic calculation module and the judgment rules in the automatic customer specification detection module through the VBA programming module. As Figure 5 shown, if the candidate panel data does not meet the customer RFQ specifications, the computer device returns to the panel data acquisition interface (RFQ automatic review system) to enable the user to re-determine the candidate panel data until the candidate panel data meets the customer RFQ specifications.

[0128] The above process can also be called the customer specification review process. In some embodiments, after completing the customer specification review, the computer device obtains the panel data of the display panel, as Figure 5 shown, perform at least one of the following to record the panel data: generate data such as a BOM (Bill of Materials) list, section, FOB, and thickness stack based on the panel data; capture the panel data and introduce the panel data into the DR report; perform customer RFQ backfill (compare and record the performance parameters corresponding to the panel data and the customer RFQ specifications). Compared with manually entering the panel data into the bill of materials, RFQ, and optical data in the database, the above process improves the efficiency and accuracy of recording the panel data.

[0129] For example, a computer device captures panel data through formula reference and imports the panel data into a preset location, where the formula reference relationship is exemplified as follows: 3006(KSF+β-sailon(540))-No Zener-Low Blue Light, 72ea, 9lm Typ, 2.88784V Max@19.6mA, 0ea TVS, using =VLOO KUP(brightness and BLU power consumption! E10, LED selection! B3:M69,11,FALSE)&","&brightness and BLU power consumption! E14&"ea"&","&brightness and BLU power consumption! E20&"lmTyp"&","&brightness and BLU power consumption! E22&"V Max@"&brightness and BLU power consumption! E21&"mA,"&brightness and BLU power consumption! E19&"ea TVS" formula reference, such as Figure 7 As shown, the computer device displays multiple positions 701 and formula input boxes 702 corresponding to the selected positions on the reference interface 700, and in response to the input operation on the formula input box 702, the parameters corresponding to the input formula reference are imported into the corresponding positions 701. In addition, in the process of generating a DR report, such as Figure 8 As shown, the computer equipment combines the mechanical-optical automatic design tool system with the development queat system and other tools, first obtains the panel data and uploads the DR report template, then reads the parameters in the panel data according to the pre-set extraction rules, fills the read parameters into the preset positions in the DR module, and obtains the DR report, thereby improving the efficiency and accuracy of obtaining the DR report.

[0130] It should be noted that for different types of display panels, different mechanical and optical automatic design tool systems need to be designed. For example, the mechanical and optical automatic design tool systems corresponding to NB include two systems for Bent and Flat.

[0131] 305. The computer device obtains an initial display panel model, where the initial display panel model includes materials used to produce the initial display panel and a structure of the initial display panel.

[0132] In the embodiment of the present application, the computer device obtains the initial display panel model locally, or receives the initial display panel model sent by other computer devices, which is not limited in the embodiment of the present application. Figure 5 As shown, the computer device obtains the initial display panel model from the database, which includes module factory data, mechanical and optical design data, panel related data and circuit related data. The computer device can adjust the initial display panel model in combination with the design rules (DesignRule) and checklist (Check List) indicated by the above data.

[0133] In some embodiments, the computer device obtains a target initial display panel model from multiple initial display panel models based on the panel data of the display panel. The target initial display panel model is the initial display panel model with the highest similarity between the panel data and the panel data of the display panel among the multiple initial display panel models, which can improve the efficiency of subsequently adjusting the initial display panel model according to the panel data to obtain the model of the display panel. Accordingly, the computer device obtains the panel data of multiple initial display panel models. For the panel data of each initial display panel model, the computer device obtains the similarity between the panel data and the panel data of the above display panel, and obtains the similarities corresponding to the multiple initial display panel models. The computer device determines the initial display panel model with the highest similarity as the target initial display panel model, and subsequently adjusts the target initial display panel model according to the panel data of the display panel.

[0134] It should be noted that for different types of display panels, the computer device needs to obtain different types of initial display panel models, such as models with a Bent glue frame protruding outward, models with a Bent glue frame not protruding outward, models with a Flat glue frame protruding outward, and models with a Flat glue frame not protruding outward.

[0135] 306. The computer device adjusts the materials and the structure of the initial display panel model based on the panel data of the display panel to obtain the model of the display panel.

[0136] In the embodiments of the present application, the computer device obtains the parameters required for adjustment from the panel data of the display panel, and adjusts the materials and the structure of the initial display panel model according to the parameters. Accordingly, the adjustment process can include at least one of the following: The computer device replaces the materials in the initial display panel model with the materials corresponding to the model parameters based on the model parameters in the panel data of the display panel, adjusts the quantity of the corresponding materials in the initial display panel model to the quantity indicated by the quantity parameters based on the quantity parameters in the panel data of the display panel, and adjusts the structure of the initial display panel model to the structure indicated by the structure parameters based on the structure parameters in the panel data of the display panel.

[0137] In some embodiments, the above adjustment process is executed by a drawing application. The computer device converts the panel data into a computer language recognizable by the drawing application, and imports the converted panel data into the drawing application so that the drawing application can adjust the initial display panel model. Among them, the optical automatic design tool system can be integrated with the equation manager to import the panel data into the drawing application. For example, Figure 9As shown, the computer device pastes the panel data into the corresponding table of the Equation Manager. The Equation Manager reads the panel data from the table and imports the panel data into the drawing application. The computer device associates the parameters in the imported panel data with the corresponding materials or structures in the initial display panel model. The computer device refreshes the initial panel data model (3D parametric model) through the drawing application, replacing the old parameters with the newly introduced parameters to achieve model changes, which can improve the drawing efficiency and accuracy compared with manual drawing. In addition, the automatic optical design tool system is directly connected to the drawing application, which can further improve the drawing efficiency and reduce the error rate. For example, as Figure 10 shown, the computer device displays the data import interface 1000. In response to the trigger operation on the edit control 1001, the edit interface 1002 is displayed. In response to the modification operation on the formula (expression) in the edit interface, the imported parameters are modified.

[0138] In some embodiments, the model of the display panel includes a 3D model and multiple 2D models. The computer device displays a model selection interface, and displays the models that the computer device can obtain according to the panel data on the model selection interface. The computer device responds to the trigger operations on multiple of these models, and displays the selection of these multiple models. In response to the trigger operation on the output control on the model selection interface, multiple models of the display panel are obtained with one key. Compared with obtaining models one by one manually, the efficiency of obtaining models is improved. The model selection interface is as Figure 11 shown. The computer device displays the model selection interface 1100, and displays multiple models 1101 of the display panel and the output control 1102 on the model selection interface 1100.

[0139] In some embodiments, the computer device adjusts the model of the display panel based on the changed parameters in response to the change of the parameters in the panel data of the display panel. Alternatively, the computer device modifies the model of the display panel in response to the modification operation on the display panel model, so as to perform secondary correction on the part of the display panel model that is not automatically generated by the computer device to meet the design requirements of the display panel.

[0140] The method for obtaining the display panel model provided by the embodiments of the present application obtains the panel data and the initial display panel model of the display panel, and adjusts the existing initial display panel model based on the panel data to obtain the model of the display panel. Compared with obtaining the display panel model by manual drawing, it improves the efficiency, accuracy and standardization of obtaining the display panel model, and saves labor costs. After testing, this method can shorten the time for obtaining the display panel model from 14 days to 4 days, improve the efficiency and accuracy of the above weight evaluation, and achieve an accuracy greater than or equal to 98%, and the spec requirement is greater than or equal to 95%.

[0141] As described above, the process can Figure 12 be shown as follows. After the computer device reviews the specifications and obtains the panel data, by adjusting the initial display panel model, the outer shape design, mating structure, FOB structure, BLU structure, celltape structure, view layout, dimension annotation, drawing frame application, and technical requirements of the display panel are drawn to obtain the model of the display panel.

[0142] Figure 13 It is a structural block diagram of a device for obtaining a display panel model provided by an embodiment of the present application. This device is used to execute the steps when the above-mentioned method for obtaining a display panel model is executed. Refer to Figure 13 for the device for obtaining a display panel model. This device includes:

[0143] A data acquisition module 1301, configured to acquire panel data of a display panel. The panel data includes multiple parameters, and the multiple parameters include model parameters, quantity parameters, and structure parameters. The model parameters indicate the model of the material used to produce the display panel, the quantity parameters indicate the quantity of the material used to produce the display panel, and the structure parameters indicate the structure of the display panel;

[0144] An initial model acquisition module 1302, configured to acquire an initial display panel model, where the initial display panel model includes the material used to produce the initial display panel and the structure of the initial display panel;

[0145] An adjustment module 1303, configured to adjust the material and structure in the initial display panel model based on the panel data of the display panel to obtain the model of the display panel.

[0146] In some embodiments, the above-mentioned data acquisition module 1301 includes:

[0147] An interface display unit, configured to display a panel data acquisition interface. Multiple parameter selection controls are displayed on the panel data acquisition interface, and each parameter selection control corresponds to a parameter in the panel data, and is used to acquire the parameter value of the corresponding parameter in the panel data;

[0148] A data acquisition unit, configured to acquire the panel data of the display panel in response to a selection operation on the multiple parameter selection controls.

[0149] In some embodiments, the above-mentioned data acquisition unit includes:

[0150] An acquisition subunit, configured to acquire candidate panel data in response to a selection operation on the multiple parameter selection controls;

[0151] A performance parameter acquisition subunit, configured to acquire the performance parameters of the display panel indicated by the candidate panel data based on multiple parameters in the candidate panel data;

[0152] A determining subunit, configured to determine the candidate panel data as the panel data of the display panel in response to that the performance parameters of the display panel indicated by the candidate panel data meet the preset conditions.

[0153] In some embodiments, the obtaining subunit is configured to:

[0154] Obtain a first part of parameters in the candidate panel data in response to a selection operation on a plurality of parameter selection controls;

[0155] Based on the first part of parameters in the candidate panel data and the preset conditions, obtain a second part of parameters in the candidate panel data, where the parameters in the second part of parameters do not belong to the first part of parameters.

[0156] In some embodiments, the apparatus further includes:

[0157] A highlighting module, configured to display, on the display panel data acquisition interface, the parameters in the candidate panel data that cause the performance parameters of the display panel corresponding to the candidate panel data not to meet the preset conditions in response to that the performance parameters of the display panel indicated by the candidate panel data do not meet the preset conditions.

[0158] In some embodiments, the initial model obtaining module 1302 is configured to:

[0159] Based on the panel data of the display panel, obtain a target initial display panel model from a plurality of initial display panel models, where the target initial display panel model is the initial display panel model with the highest similarity between the panel data and the panel data of the display panel among the plurality of initial display panel models.

[0160] In some embodiments, the adjustment module 1303 is configured to:

[0161] Based on the model number parameter in the panel data of the display panel, replace the material in the initial display panel model with the material corresponding to the model number parameter;

[0162] Based on the quantity parameter in the panel data of the display panel, adjust the quantity of the corresponding material in the initial display panel model to the quantity indicated by the quantity parameter;

[0163] Based on the structure parameter in the panel data of the display panel, adjust the structure of the initial display panel model to the structure indicated by the structure parameter.

[0164] In some embodiments, the apparatus further includes:

[0165] A model adjustment module, configured to adjust the model of the display panel based on the changed parameters in response to a change in the parameters in the panel data of the display panel.

[0166] It should be noted that when the device provided in the above embodiment obtains the display panel model, only the division of the above-mentioned functional modules is used for illustration. In actual applications, the above functions can be allocated to different functional modules according to needs, that is, the internal structure of the device is divided into different functional modules to complete all or part of the functions described above. In addition, the device provided in the above embodiment and the method embodiment belong to the same concept. For the specific implementation process, please refer to the method embodiment and will not be elaborated here.

[0167] Figure 14 FIG. 4 is a schematic structural diagram of a computer device provided by an embodiment of the present application. The computer device 1400 may vary greatly due to different configurations or performances, and may include one or more CPUs (Central Processing Units, processors) 1401 and one or more memories 1402. Among them, at least one computer program is stored in the memory 1402, and the at least one computer program is loaded and executed by the processor 1401 to implement the method for obtaining a display panel model provided in each of the above method embodiments. Of course, the server may also have components such as a wired or wireless network interface, a keyboard, and an input / output interface for input / output. The server may also include other components for implementing the functions of the device, which will not be elaborated here.

[0168] An embodiment of the present application further provides a computer-readable storage medium, in which at least one segment of computer program is stored, and the at least one segment of computer program is loaded and executed by the processor of the computer device to implement the operations performed by the server in the method for obtaining a display panel model in the above embodiment. For example, the computer-readable storage medium may be a ROM (Read-Only Memory), a RAM (Random Access Memory), a CD-ROM (Compact Disc Read-Only Memory), a magnetic tape, a floppy disk, an optical data storage device, etc.

[0169] An embodiment of the present application further provides a computer program product or a computer program, which includes computer program code, and the computer program code is stored in a computer-readable storage medium. The processor of the computer device reads the computer program code from the computer-readable storage medium, and the processor executes the computer program code, so that the computer device executes the method for obtaining a display panel model provided in the above various optional implementation manners.

[0170] Those of ordinary skill in the art can understand that all or part of the steps to implement the above embodiments can be completed by hardware, or can be completed by instructing relevant hardware through a program. The program can be stored in a computer-readable storage medium, and the storage medium mentioned above can be a read-only memory, a magnetic disk or an optical disc, etc.

[0171] The above are only alternative embodiments of the present application and are not intended to limit the present application. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present application shall be included within the protection scope of the present application.

Claims

1. A method for obtaining a display panel model, characterized in that The method includes: Obtaining panel data of a display panel, where the panel data includes multiple parameters, and the multiple parameters include a model parameter, a quantity parameter, and a structure parameter. The model parameter indicates the model of the material used to produce the display panel, the quantity parameter indicates the quantity of the material used to produce the display panel, and the structure parameter indicates the structure of the display panel; Obtaining an initial display panel model, where the initial display panel model includes the material used to produce the initial display panel and the structure of the initial display panel; Based on the panel data of the display panel, adjusting the material in the initial display panel model and the structure of the initial display panel model to obtain the model of the display panel.

2. The method according to claim 1, wherein The obtaining of the panel data of the display panel includes: A display panel data acquisition interface, on which a plurality of parameter selection controls are displayed, and each parameter selection control corresponds to a parameter in the panel data and is used to obtain the parameter value of the corresponding parameter in the panel data; In response to a selection operation on the plurality of parameter selection controls, obtaining the panel data of the display panel.

3. The method according to claim 2, characterized in that, The obtaining of the panel data of the display panel in response to a selection operation on the plurality of parameter selection controls includes: In response to a selection operation on the plurality of parameter selection controls, obtaining candidate panel data; Based on the multiple parameters in the candidate panel data, obtaining the performance parameters of the display panel indicated by the candidate panel data; In response to the performance parameters of the display panel indicated by the candidate panel data meeting a preset condition, determining the candidate panel data as the panel data of the display panel.

4. The method according to claim 3, characterized in that, The obtaining of the candidate panel data in response to a selection operation on the plurality of parameter selection controls includes: In response to a selection operation on the plurality of parameter selection controls, obtaining the first part of the parameters in the candidate panel data; Based on the first part of the parameters in the candidate panel data and the preset condition, obtaining the second part of the parameters in the candidate panel data, where the parameters in the second part of the parameters do not belong to the first part of the parameters.

5. The method according to claim 3, wherein The method further includes: In response to the performance parameters of the display panel indicated by the candidate panel data not meeting the preset condition, displaying on the display panel data acquisition interface the parameters in the candidate panel data that cause the performance parameters of the display panel corresponding to the candidate panel data not to meet the preset condition.

6. The method according to claim 1, wherein The obtaining of the initial display panel model includes: Based on the panel data of the display panel, obtaining a target initial display panel model from a plurality of initial display panel models, where the target initial display panel model is the initial display panel model with the highest similarity between the panel data and the panel data of the display panel among the plurality of initial display panel models.

7. The method according to claim 1, characterized in that, The adjusting of the material in the initial display panel model and the structure of the initial display panel model based on the panel data of the display panel includes at least one of the following: Based on the model parameter in the panel data of the display panel, replacing the material in the initial display panel model with the material corresponding to the model parameter; Based on the quantity parameter in the panel data of the display panel, adjust the quantity of the corresponding material in the initial display panel model to the quantity indicated by the quantity parameter; Based on the structure parameter in the panel data of the display panel, adjust the structure of the initial display panel model to the structure indicated by the structure parameter.

8. The method according to claim 1, characterized in that, The method further includes: In response to a change in the parameter in the panel data of the display panel, based on the changed parameter, adjust the model of the display panel.

9. An apparatus for obtaining a display panel model, characterized in that, The apparatus includes: A data acquisition module, configured to acquire panel data of a display panel, where the panel data includes a plurality of parameters, and the plurality of parameters include a model parameter, a quantity parameter, and a structure parameter. The model parameter indicates the model of the material used to produce the display panel, the quantity parameter indicates the quantity of the material used to produce the display panel, and the structure parameter indicates the structure of the display panel; An initial model acquisition module, configured to acquire an initial display panel model, where the initial display panel model includes the material used to produce the initial display panel and the structure of the initial display panel; An adjustment module, configured to adjust the material in the initial display panel model and the structure of the initial display panel model based on the panel data of the display panel to obtain the model of the display panel.

10. A computer device, characterized in that, The computer device includes a processor and a memory. The memory is used to store at least one segment of computer program, and the at least one segment of computer program is loaded and executed by the processor to perform the method according to any one of claims 1 to 8.

11. A computer-readable storage medium, characterized in that, The computer-readable storage medium is used to store at least one segment of computer program, and the at least one segment of computer program is used to perform the method according to any one of claims 1 to 8.

12. A computer program product, characterized in that, Including a computer program, which when executed by a processor implements the method according to any one of claims 1 to 8.